• Laser & Optoelectronics Progress
  • Vol. 55, Issue 10, 103201 (2018)
Zhou Fengquan, Yuan Shuai*, Guo Zhengru, Hao Qiang..., Xu Hui and Zeng Heping|Show fewer author(s)
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    DOI: 10.3788/lop55.103201 Cite this Article Set citation alerts
    Zhou Fengquan, Yuan Shuai, Guo Zhengru, Hao Qiang, Xu Hui, Zeng Heping. High Power Compact Fiber Femtosecond Laser Amplification System[J]. Laser & Optoelectronics Progress, 2018, 55(10): 103201 Copy Citation Text show less
    References

    [1] Zhu J F, Wei Z Y. Femtosecond laser micro-nano fabrication[J]. Physics, 2006, 35(8): 679-683.

    [2] Tonouchi M. Cutting-edge terahertz technology[J]. Nature Photonics, 2007, 1(2): 97-105.

    [3] Hu C Z, Chen T, Jiang P P, et al. Broadband high-power mid-IR femtosecond pulse generation from an ytterbium-doped fiber laser pumped optical parametric amplifier[J]. Optics Letters, 2015, 40(24): 5774-5777.

    [4] Liu M N, Li M T, Sun H B. 3D femtosecond laser nanoprinting[J]. Laser & Optoelectronics Progress, 2018, 55(1): 011410.

    [5] Peng E, Bell R, Zuhlke C A, et al. Growth mechanisms of multiscale, mound-like surface structures on titanium by femtosecond laser processing[J]. Journal of Applied Physics, 2017, 122(13): 133108.

    [6] Li F, Yang Z, Zhao W, et al. Hundred micro-joules level femtosecond fiber laser amplification system[J]. Chinese Journal of Lasers, 2015, 42(12): 1202005.

    [7] Wang Q Y, Hu M L, Chai L. Progress in nonlinear optics with photonic crystal fibers[J]. Chinese Journal of Lasers, 2006, 33(1): 57-66.

    [8] Hao Q, Li W X, Zeng H P. High-power Yb-doped fiber amplification synchronized with a few-cycle Ti:sapphire laser[J]. Optics Express, 2009, 17(7): 5815-5821.

    [9] Agrawal G P. Optical pulse propagation in doped fiber amplifiers[J]. Physical Review A, 1991, 44(11): 7493-7501.

    [10] Rser F, Eidam T, Rothhardt J, et al. Millijoule pulse energy high repetition rate femtosecond fiber chirped-pulse amplification system[J]. Optics Letters, 2007, 32(24): 3495-3497.

    [11] Eidam T, Rothhardt J, Stutzki F, et al. Fiber chirped-pulse amplification system emitting 38 GW peak power[J]. Optics Express, 2010, 19(1): 255-260.

    [12] Fang X H, Hu M L, Liu B W, et al. Hundreds of megawatts peak power multi-core photonic crystal fiber laser amplifier[J]. Chinese Journal of Lasers, 2010, 37(9): 2366-2370.

    [13] Wen L, Liu B W, Song H Y, et al. All polarization-maintaining fiber amplification system to generate high-power and high-quality femtosecond laser pulses[J]. Chinese Journal of Lasers, 2017, 44(2): 0201011.

    [14] Hao J Y, Liu B W, Song H Y, et al. Femtosecond fiber amplification system based on third-order dispersion compensation technique[J]. Laser & Optoelectronics Progress, 2018, 55(5): 051404.

    [15] Sun R Y, Tan F Z, Jin D C, et al. 1 μm femtosecond fiber chirped pulse amplification system based on dispersion wave[J]. Chinese Journal of Lasers, 2018,45(1): 0101001.

    [16] Zaouter Y, Papadopoulos D N, Hanna M, et al. Stretcher-free high energy nonlinear amplification of femtosecond pulses in rod-type fibers[J]. Optics Letters, 2008, 33(2): 107-109.

    [17] Liu Y, Li W X, Luo D P, et al. Generation of 33 fs 935 W average power pulses from a third-order dispersion managed self-similar fiber amplifier[J]. Optics Express, 2016, 24(10): 10939-10945.

    Zhou Fengquan, Yuan Shuai, Guo Zhengru, Hao Qiang, Xu Hui, Zeng Heping. High Power Compact Fiber Femtosecond Laser Amplification System[J]. Laser & Optoelectronics Progress, 2018, 55(10): 103201
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